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Catalyst Active Aluminium Oxide

Catalyst Active Aluminium Oxide
SKU
RXSOL-24-1905-225
Supply Location::
Locations

Catalyst Active Aluminium Oxide manufacturer supplier distributor in Mumbai, Kandla, Kolkata, Vizag, Chennai, India, Fujairah, Dubai, Sharjah, UAE, Gulf, Middle East, Muscat Oman, Kenya Africa. Get the best quality of Catalyst Active Aluminium Oxide at a competitive price from us. We have ready stock of Catalyst Active Aluminium Oxide in India, UAE Gulf, Oman, Kenya Africa. Contact us for bulk as well as small orders.


RXMARINE CHEMICAL TAG::
This product is  γ-form white spheric  active aluminium oxide, which is used for the recovery of sulfur from acidic gas containing sulfur by liquefaction in petrochemical industry. The product is prepared from intermediate raw materials of quick dehydration process production. It has the feature of high crushing strength, low adsorption rate, good activity, long period of service life, good physic-chemical properties and high catalytic activity etc. The performances of the product such as hydrolytic activity of claus, hydrolytic activity to organics sulfur, resistance to sulfation, heat stability and chemical composition can reach the level of CR- form aluminium oxide catalyst made by France.
 
This Product is suitable for the sulfur recovery in the refined oil plant, natural gas plant, coal gas.
Remarks
Application Content (wt%)
Medium temperature CO Conversion a CuO    -30
ZnO    -60
Al2O3    -10
Sour Gas Shift   CoO    -3.5
MoO3   -14
AI2O3   (balance)
Ammonia
Synthesis
a Fe 78
Fe2O3+Feo    -10
b Fe2O3+FeO    -92
Methanol 
Synthesis
a CuO+ZnO+AI2O3
Methanol Reforming a CuO    -32
ZnO    -66
  CuO    -23
Zno    -11
AI2O3    -8
Ammonia Dissociation a NiO    -8
MgO (balance)
Production of town gas a NiO    -7
SiO2   -8
AI2O3   (balance)
b Fe2O3   -89
Cr2O3   -9
CuO    -2
Gas Purification a Pt    -0.3
NiO    -4
Al2O3    (balance)
  Pd    (0.2-0.5)
AI2O3    (balance)
MTBE catalyst    
MA catalyst    
Note
Precautions :
1. In the operation process, prevent the bed layer of the reactor from high temperature, carbon deposition and sulfation, start or stop working carefully, so as to keep the high activity of catalyst and prolong the service life of catalyst.
 
2. The oxygen and sulfur dioxide content in the air flow entered into the reactor should be decreased as much as possible, so as to prevent the catalyst from sulfation poisoning. At normal operation H2S/SO2(molecular rate)should be about 2.
 
3. Under the air flow containing sulfur steam, the temperature in all part of the bed layer of the reactor should be less than the dew point of sulfur, so as to avoid the sulfur deposition on catalyst and plugging off the pipeline. Any wrong operation of raise temperature or drop temperature should be avoided.
 
4. Amines, hydrocarbons and ammonium etc. should be avoided into reactor, so as to prevent the catalyst from carbon deposition, plugging the pipeline and forming poisonous such as ammonium sulfate etc.
Application Contentz[wt%]
Hydrodesul Furtization a CoO   (3-5)
MoO3   (13-21)
Al2O3   (balance)
(extrudates)
b NiO   (3-6)
MoO3  (13-21)
Al2O3   (balance)
Sulfur Removal a ZnO   90
Blinder   (Balance)
b CuO    6
Activated Carbon    (Balance)
(granules)
Chlorline Removal a Na2O  ( 7-10)
Al2O3    (balance)
(Spheres)
Steam reforming a NiO   -56
MgO   -12
SiO2  -10
Al2O3   (balance)
(tablet)
b NiO   (14-25)
K2O   (1-8.5)
CaAI12O19/@AI2O3  (balance)
c NiO   (12-14)
AI2O3   (balance)
High temperature CO converstaion a Fe2O3   -89
Cr2O3   -9
CuO   -2
(tablet)
Low temperature CO converstaion a CuO   (38-57 )
ZnO   (31-42 )
AI2O3   (10-12)
 

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